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Applications of laser-processed substrate for molecular diagnostics

机译:激光处理基板在分子诊断中的应用

摘要

Surface enhanced Raman Scattering (SERS) and related modalities offer greatly enhanced sensitivity and selectivity for detection of molecular species through the excitation of plasmon modes and their coupling to molecular vibrational modes. One of the chief obstacles to widespread application is the availability of suitable nanostructured materials that exhibit strong enhancement of Raman scattering, are inexpensive to fabricate, and are reproducible. I describe nanostructured surfaces for SERS and other photonic sensing that use semiconductor and metal surfaces fabricated using femtosecond laser processing. A noble metal film (e.g., silver or gold) is evaporated onto the resulting nanostructured surfaces for use as a substrate for SERS. These surfaces are inexpensive to produce and can have their statistical properties precisely tailored by varying the laser processing. Surfaces can be readily micropatterned and both stochastic and self-organized structures can be fabricated. This material has application to a variety of genomic, proteomic, and biosensing applications including label free applications including binding detection. Using this material, monolithic or arrayed substrates can be designed. Substrates for cell culture and microlabs incorporating microfluidics and electrochemical processing can be fabricated as well. Laser processing can be used to form channels in the substrate or a material sandwiched onto it in order to introduce reagents and drive chemical reactions. The substrate can be fabricated so application of an electric potential enables separation of materials by electrophoresis or electro-osmosis.
机译:表面增强拉曼散射(SERS)和相关模式通过激发等离激元模式并将其耦合到分子振动模式,大大提高了检测分子种类的灵敏度和选择性。广泛应用的主要障碍之一是合适的纳米结构材料的可用性,这些材料表现出拉曼散射的增强,制造成本低廉且可重复生产。我描述了用于SERS和其他光子传感的纳米结构表面,这些表面使用飞秒激光加工制造的半导体和金属表面。将贵金属膜(例如银或金)蒸发到所得的纳米结构表面上,以用作SERS的基底。这些表面的生产成本低廉,并且可以通过改变激光加工精确地调整其统计属性。表面可以容易地进行微图案化,并且可以制造随机和自组织的结构。该材料可应用于各种基因组,蛋白质组和生物传感应用,包括无标记的应用,包括结合检测。使用这种材料,可以设计整体式或阵列式基板。也可以制造用于细胞培养的基质以及结合了微流体和电化学处理的微实验室。激光加工可用于在基材或夹在其上的材料中形成通道,以引入试剂并驱动化学反应。可以制造衬底,从而施加电势可以通过电泳或电渗分离材料。

著录项

  • 公开/公告号US2012092661A1

    专利类型

  • 公开/公告日2012-04-19

    原文格式PDF

  • 申请/专利权人 STEVEN M. EBSTEIN;

    申请/专利号US201113135197

  • 发明设计人 STEVEN M. EBSTEIN;

    申请日2011-06-28

  • 分类号G01J3/44;

  • 国家 US

  • 入库时间 2022-08-21 17:33:55

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